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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >The oxidative stress caused by atrazine in root exudation of Pennisetum americanum (L.) K. Schum
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The oxidative stress caused by atrazine in root exudation of Pennisetum americanum (L.) K. Schum

机译:阿特拉嗪引起的氧化胁迫在彭尼斯姆(L.)K. schum的根本渗出

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摘要

Pearl millet (Pennisetum americanum (L.) K. Schum) has been proven as a potential remediation plant of the pollution caused by atrazine. Plants used in remediation can release root exudates to communicate with rhizosphere microorganisms and accelerate the removal of pollutants in soil. However, the response of pearl millet root exudates under atrazine stress has remained unclear. In this study, hydroponic experiments were conducted at Northeast Agricultural University, Harbin, China, to investigate the oxidative stress response and the changes in composition of root exudates in pearl millet plants that were exposed to 19.4 mg L-1 of atrazine, compared to the untreated control. The experiment was established as six treatments with exposure to no atrazine for 2, 4 and 6 days (CK-2, CK-4, CK-6) and 19.4 mg L-1 atrazine for 2, 4 and 6 days (AT-2, AT-4, AT-6), respectively. The results suggest that the growth of the seedlings changed slightly when exposed to atrazine for 2 days. The content of thiobarbituric acid reactive substances exposed to atrazine for 6 days increased 26% compared with the treatment that was exposed for 2 days. Moreover, the reactive oxygen species in test plant obviously increased when exposed to atrazine for 6 days. In addition, the activity of superoxide dismutase increased from 30.82 ug(-1) to 37.33 ug(-1) fresh weight after 6 days of exposure to atrazine. The results of a nontargeted metabolomic analysis suggest that carbohydrate metabolism, fatty acid metabolism and amino acid metabolism in pearl millet were obviously affected by the oxidative stress caused by atrazine. The contents of sphinganine and methylimidazole acetaldehyde in CK-6 increased by 5.14 times and 2.05 times, respectively, compared with those of CK-2. Furthermore, the contents of (S)-methylmalonic acid semialdehyde and 1-pyrroline-2-carboxylic acid decreased by 0.56 times and 0.5 times, respectively, compared with the AT-6. These results strongly suggest that the changes observed in the composition of root exudates in pearl millet seedlings can be attributed to the oxidative stress caused by atrazine.
机译:珍珠粟(Pennisetum americanum(L.)K.Schum)已被证明是阿特拉津污染的潜在修复植物。用于修复的植物可以释放根系分泌物,与根际微生物沟通,加速土壤中污染物的去除。然而,珍珠粟根系分泌物在阿特拉津胁迫下的反应仍不清楚。在本研究中,在中国哈尔滨东北农业大学进行了水培试验,以研究与未处理对照相比,暴露于19.4 mg L-1阿特拉津的珍珠粟植株的氧化应激反应和根系分泌物成分的变化。该实验分为六个处理,分别在不使用阿特拉津的情况下暴露2、4和6天(CK-2、CK-4、CK-6)和19.4 mg L-1阿特拉津的情况下暴露2、4和6天(AT-2、AT-4、AT-6)。结果表明,阿特拉津处理2天后,幼苗的生长略有变化。与暴露2天的处理相比,暴露于阿特拉津6天的硫代巴比妥酸反应物质含量增加26%。此外,阿特拉津暴露6天后,试验植株中的活性氧物种明显增加。此外,暴露于阿特拉津6天后,超氧化物歧化酶的活性从30.82 ug(-1)增加到37.33 ug(-1)鲜重。非目标代谢组学分析结果表明,阿特拉津引起的氧化应激对珍珠谷子的碳水化合物代谢、脂肪酸代谢和氨基酸代谢有明显影响。与CK-2相比,CK-6中的蝶呤和甲基咪唑乙醛含量分别增加了5.14倍和2.05倍。此外,与AT-6相比,(S)-甲基丙二酸半醛和1-吡咯啉-2-羧酸的含量分别降低了0.56倍和0.5倍。这些结果强烈表明,珍珠谷子幼苗根系分泌物成分的变化可归因于阿特拉津引起的氧化应激。

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